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Merck

07-677-I

Sigma-Aldrich

Anti-acetyl-Histone H3 (Lys56) Antibody

from rabbit, purified by affinity chromatography

동의어(들):

Histone H3.1, Histone H3/a, Histone H3/b, Histone H3/c, Histone H3/d, Histone H3/f, Histone H3/h, Histone H3/i, Histone H3/j, Histone H3/k, Histone H3/l, H3K56Ac, Histone H3 (acetyl K56), Histone H3 K56ac

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크기 선택


제품정보 (DICE 배송 시 비용 별도)

UNSPSC 코드:
12352203
eCl@ss:
32160702
NACRES:
NA.41
기술 서비스
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도움 문의
기술 서비스
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도움 문의

생물학적 소스

rabbit

Quality Level

항체 형태

affinity isolated antibody

항체 생산 유형

primary antibodies

클론

polyclonal

정제법

affinity chromatography

종 반응성

human

기술

ChIP: suitable
dot blot: suitable
western blot: suitable

NCBI 수납 번호

UniProt 수납 번호

배송 상태

wet ice

타겟 번역 후 변형

acetylation (Lys56)

유전자 정보

human ... HIST1H3F(8968)

일반 설명

Histone H3 is one of the 5 main histone proteins involved in the structure of chromatin in eukaryotic cells. Featuring a main globular domain and a long N terminal tail H3 is involved with the structure of the nucleosomes of the ′beads on a string′ structure. Acetylation of histone H3 occurs at several different lysine positions in the histone tail and is performed by a family of enzymes known as Histone Acetyl Transferases (HATs).
~17 kDa observed

면역원

Epitope: Acetylated Lys56
KLH-conjugated linear peptide corresponding to human Histone H3 acetylated at Lys56.

애플리케이션

Anti-acetyl-Histone H3 (Lys56) is an antibody targeting the acetyl-Histone H3 (Lys56) protein, validated for use in WB & ChIP.
Dot Blot (Specificity) Analysis: A representative lot detected acetyl-Histone H3 (Lys56) in an Absurance Histone H3 Antibody Specificity Array (Cat. No. 16-667).

Chromatin Immunoprecipitation Analysis: A representative lot immunoprecipitated acetyl-Histone H3 (Lys56) from HeLa cells.
Research Category
Epigenetics & Nuclear Function
Research Sub Category
Histones

생화학적/생리학적 작용

This antibody recognizes Histone H3 acetylated at Lys56.

물리적 형태

Affinity purified
Purified rabbit polyclonal in buffer containing 0.1 M Tris-Glycine (pH 7.4), 150 mM NaCl with 0.05% sodium azide.

제조 메모

Stable for 1 year at 2-8°C from date of receipt.

분석 메모

Control
HeLa acid extract, sodium butyrate treated HeLa acid extract, colcemid treated HeLa acid extract, recombinant Histone H3, recombinant Histone H4, and recombinant Histone H2A
Evaluated by Western Blot in HeLa acid extract, sodium butyrate treated HeLa acid extract, colcemid treated HeLa acid extract, recombinant Histone H3, recombinant Histone H4, and recombinant Histone H2A.

Western Blot Analysis: A 1:405 dilution of this antibody detected acetyl-Histone H3 (Lys56) in sodium butyrate treated HeLa acid extract.

기타 정보

Replaces: 07-677

면책조항

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

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Storage Class Code

12 - Non Combustible Liquids

WGK

WGK 1

Flash Point (°F)

Not applicable

Flash Point (°C)

Not applicable


시험 성적서(COA)

제품의 로트/배치 번호를 입력하여 시험 성적서(COA)을 검색하십시오. 로트 및 배치 번호는 제품 라벨에 있는 ‘로트’ 또는 ‘배치’라는 용어 뒤에서 찾을 수 있습니다.

이 제품을 이미 가지고 계십니까?

문서 라이브러리에서 최근에 구매한 제품에 대한 문서를 찾아보세요.

문서 라이브러리 방문

Qing Cai et al.
Journal of fungi (Basel, Switzerland), 7(11) (2021-11-28)
Chromatin remodeling is mediated in part by post-translational acetylation/deacetylation modifications of histones. Histone acetyltransferases (HATs), e.g., members of the GNAT/MYST superfamily, activate gene transcription via promotion of euchromatin formation. Here, we characterized a GNAT family HAT, Spt10 (BbSpt10), in the
Emmanuelle Gouot et al.
Nucleic acids research, 46(15), 7612-7630 (2018-06-16)
CK2 is an essential protein kinase implicated in various cellular processes. In this study, we address a potential role of this kinase in chromatin modulations associated with transcription. We found that CK2 depletion from yeast cells leads to replication-independent increase
Qing Cai et al.
Environmental microbiology, 20(4), 1590-1606 (2018-03-27)
Rpd3 is a class I histone deacetylase that reverses lysine acetylation thus influencing cellular processes and functions. However, its role in fungal insect pathogens has not been explored yet. Here we show that Rpd3-dependent lysine modification and gene expression orchestrate
Ai-Shun Guo et al.
Molecular medicine reports, 14(5), 4613-4621 (2016-10-26)
The present study aimed to investigate the differential expression and clinical significance of histone methyltransferase G9a, histone H3K9me2 and histone H3K9me1 in human brain glioma and adjacent tissue samples. It also aimed to observe the effect and mechanism of BIX‑01294, as
Fabien Moretto et al.
Cell reports, 34(3), 108643-108643 (2021-01-21)
Transcription through noncoding regions of the genome is pervasive. How these transcription events regulate gene expression remains poorly understood. Here, we report that, in S. cerevisiae, the levels of transcription through a noncoding region, IRT2, located upstream in the promoter of

관련 콘텐츠

Cancer is a complex disease manifestation. At its core, it remains a disease of abnormal cellular proliferation and inappropriate gene expression. In the early days, carcinogenesis was viewed simply as resulting from a collection of genetic mutations that altered the gene expression of key oncogenic genes or tumor suppressor genes leading to uncontrolled growth and disease (Virani, S et al 2012). Today, however, research is showing that carcinogenesis results from the successive accumulation of heritable genetic and epigenetic changes. Moreover, the success in how we predict, treat and overcome cancer will likely involve not only understanding the consequences of direct genetic changes that can cause cancer, but also how the epigenetic and environmental changes cause cancer (Johnson C et al 2015; Waldmann T et al 2013). Epigenetics is the study of heritable gene expression as it relates to changes in DNA structure that are not tied to changes in DNA sequence but, instead, are tied to how the nucleic acid material is read or processed via the myriad of protein-protein, protein-nucleic acid, and nucleic acid-nucleic acid interactions that ultimately manifest themselves into a specific expression phenotype (Ngai SC et al 2012, Johnson C et al 2015). This review will discuss some of the principal aspects of epigenetic research and how they relate to our current understanding of carcinogenesis. Because epigenetics affects phenotype and changes in epigenetics are thought to be key to environmental adaptability and thus may in fact be reversed or manipulated, understanding the integration of experimental and epidemiologic science surrounding cancer and its many manifestations should lead to more effective cancer prognostics as well as treatments (Virani S et al 2012).

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